Published July 1979 | Version v1
Journal article

Stimulated Thomson scattering

  • 1. Department of Physics, University of Wisconsin, Madison, Wisconsin 53706

Description

The theory of stimulated Thomson scattering is investigated both quantum mechanically and classically. In the interaction of a collisionless plasma with two electromagnetic waves, both with frequencies well above the plasma frequency, energy is transferred from the high-frequency wave to the low-frequency wave via stimulated Thomson scattering. This process is mediated by the nonlinear interaction of the plasma electrons with a beat wave at the difference frequency between the two waves; this beat frequency must be well above the plasma frequency. The gain coefficient for stimulated Thomson scattering is calculated both quantum mechanically and classically, and identical results are obtained. The classical calculation also yields the first nonlinear term in the index of refraction due to stimulated Thomson scattering, as well as the details of the saturation of the gain and the index of refraction. The authors present explicit formulas for the gain coefficient and the index of refraction, in the unsaturated limit, for both very cold and very hot plasmas. The calculations indicate that it should be possible to detect stimulated Thomson scattering experimentally by means of polarization enhancement. In an appendix, the theory of stimulated Thomson scattering is used to treat the free-electron amplifier

Additional details

Publishing Information

Journal Title
Phys. Rev., A
Journal Volume
20
Journal Issue
1
Series
Phys. Rev., A.
Journal Page Range
304-315
ISSN
0556-2791

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
11498107
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Descriptors DEI
CLASSICAL MECHANICS; COLLISIONLESS PLASMA; ELECTROMAGNETIC RADIATION; ENERGY TRANSFER; GAIN; QUANTUM MECHANICS; THOMSON SCATTERING
Descriptors DEC
INELASTIC SCATTERING; MECHANICS; PLASMA; RADIATIONS; SCATTERING